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Parametric study on bond of GFRP bars in alkali-activated cement concrete

机译:碱活性水泥混凝土中GFRP棒键的参数研究

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Bond behaviour plays an important role in the design and performance of reinforced-concrete structures. In this study, finite-element modelling is used to perform a parametric study. The bond between the glass fibre-reinforced polymer (GFRP) bar and alkali-activated cement concrete is modelled by surface-based cohesive behaviour. The accuracy of the model is validated by comparing model predictions with experimental results. The effect of concrete cover, bar diameter, compressive strength, lead length, embedment length and GFRP elastic modulus on bond behaviour is investigated. Each of these parameters are varied based on a range of applicable values to study their influence on bond behaviour. The parametric study showed that bond behaviour is mainly affected by concrete cover, bar diameter, embedment length and the compressive strength of the concrete. The effect of the elastic modulus of the GFRP bar is not as pronounced as that of the other parameters, while the influence of lead length can be avoided by providing enough unbonded length at the loaded end. The parametric study is further used to calibrate a well-known bond equation and develop a new regression equation for predicting the maximum bond stress. The predicted results from these equations showed a good agreement with the experimental results as well as those of the finite-element model.
机译:债券行为在钢筋混凝土结构的设计和性能方面发挥着重要作用。在该研究中,使用有限元建模来执行参数研究。玻璃纤维增​​强聚合物(GFRP)棒与碱活化水泥混凝土之间的粘合由基于表面的粘性行为建模。通过将模型预测与实验结果进行比较来验证模型的准确性。研究了混凝土盖,杆直径,抗压强度,铅长,嵌入量和GFRP弹性模量对键合行为的影响。这些参数中的每一个都基于一系列适用的值来研究它们对债券行为的影响。参数研究表明,债券行为主要受混凝土混凝土盖,杆直径,嵌入长度和压缩强度的影响。 GFRP棒的弹性模量的影响不是像其他参数那样明显的,而通过在装载的端部提供足够的未粘结的长度,可以避免铅长度的影响。参数研究还用于校准众所周知的债券方程,并开发用于预测最大粘合应力的新回归方程。这些方程的预测结果与实验结果以及有限元模型的预测结果表现出良好的一致性。

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